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Showing all 6 results Save | Export
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Nicolas Dietrich; Gaëlle Lebrun; Kalyani Kentheswaran; Mathias Monnot; Patrick Loulergue; Carine Franklin; Florence Teddé-Zambelli; Chafiaa Djouadi; Sébastien Leveneur; Mallorie Tourbin; Yolaine Bessie`re; Carole Coufort-Saudejaud; Annabelle Couvert; Eric Schaer – Journal of Chemical Education, 2022
Women are increasingly present in the field of engineering, but despite a significant female presence, it has been found that the programs continue to make no reference to women scientists. In chemical engineering, for example, all the names of scientists mentioned in the programs belong to men only. To test this hypothesis of over-representation…
Descriptors: Females, Disproportionate Representation, Engineering, Engineering Education
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Sharon Tettegah; Ebenezer Larnyo; Charles Terry; Jessica Young; Dave Vallett; Alan B. Craig; Yingtao Jiang – Schools: Studies in Education, 2024
Increasing diversity and broadening participation in engineering programs has been a persistent challenge due to various factors. Despite efforts to enhance engineering education, we have not seen a significant increase in matriculation, retention, and graduation rates in certain engineering fields. For decades, academic institutions have received…
Descriptors: Engineering Education, Disproportionate Representation, Access to Education, Minority Group Students
Mahase, Kim K. – ProQuest LLC, 2023
Electrical engineering undergraduate students have been deprived of opportunities to gain professional development, usually obtained through internships, outreach programs, collaborative education programs, and research initiatives resulting from the global pandemic in 2019. Such opportunities are often the means for students to transition to the…
Descriptors: Education Work Relationship, Employment Potential, Engineering Education, Undergraduate Students
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Coblentz, Dori; Realff, Mary Lynn; Alemdar, Meltem – Advances in Engineering Education, 2021
The Effective Team Dynamics (ETD) Initiative at Georgia Tech developed curriculum to improve function of student teams. ETD uses the language of CliftonStrengths® to help students identify the areas in which they are the strongest and to apply those strengths to interpersonal contexts. ETD has developed curriculum for five "Touchpoints,"…
Descriptors: Teamwork, Engineering Education, Teaching Methods, Minority Group Students
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Celedón-Pattichis, Sylvia; LópezLeiva, Carlos Alfonso; Pattichis, Marios S.; Llamocca, Daniel – Cultural Studies of Science Education, 2013
There is a strong need in the United States to increase the number of students from underrepresented groups who pursue careers in Science, Technology, Engineering, and Mathematics. Drawing from sociocultural theory, we present approaches to establishing collaborations between computer engineering and mathematics/bilingual education faculty to…
Descriptors: Middle School Students, Disproportionate Representation, Educational Cooperation, Bilingual Education
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Bang, Megan; Medin, Douglas – Science Education, 2010
Although there has been considerable focus on the underrepresentation of minorities in science, technology, engineering, and mathematics (STEM) disciplines and the need for science instruction that fosters diversity, much of the associated effort has focused on the goal of diversity and tended to assume that science and science learning are…
Descriptors: American Indians, Disproportionate Representation, Science Instruction, Science Education